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Efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization

AIM: The aim is to assess and compare the mineral gain and penetration depth of hydroxyapatite and silica nanoparticle infiltrates into artificially created erosive lesions of enamel and dentin. MATERIALS AND METHODS: Sixty extracted human molars were sectioned to obtain enamel and dentin samples (n...

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Autores principales: Karumuri, Srujana, Mandava, Jyothi, Pamidimukkala, Sahithi, Uppalapati, Lakshman Varma, Konagala, Ravi Kumar, Dasari, Lohita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7861069/
https://www.ncbi.nlm.nih.gov/pubmed/33551597
http://dx.doi.org/10.4103/JCD.JCD_182_20
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author Karumuri, Srujana
Mandava, Jyothi
Pamidimukkala, Sahithi
Uppalapati, Lakshman Varma
Konagala, Ravi Kumar
Dasari, Lohita
author_facet Karumuri, Srujana
Mandava, Jyothi
Pamidimukkala, Sahithi
Uppalapati, Lakshman Varma
Konagala, Ravi Kumar
Dasari, Lohita
author_sort Karumuri, Srujana
collection PubMed
description AIM: The aim is to assess and compare the mineral gain and penetration depth of hydroxyapatite and silica nanoparticle infiltrates into artificially created erosive lesions of enamel and dentin. MATERIALS AND METHODS: Sixty extracted human molars were sectioned to obtain enamel and dentin samples (n = 60 each). They were demineralized using citric and formic acid, respectively, to create erosive lesions on enamel and dentin surfaces. Samples were assigned into nanohydroxyapatite (nHA) or nanosilica groups (n = 30 each) according to the infiltrant used. Half of the enamel and dentin samples in each group (n = 15) were analyzed after erosive attack for mineral loss, after infiltrant application for mineral gain, using energy-dispersive X-ray spectroscopy. In another half of the enamel and dentin samples (n = 15), the penetration depth of the nanoinfiltrants was analyzed using confocal microscopy. STATISTICAL ANALYSIS: To compare the overall mineral gain between groups, a dependent t-test was applied. The intergroup comparisons were made using one-way ANOVA followed by Tukey post hoc test for pairwise comparisons for both penetration depth and mineral gain. The significance level was set to P ≤ 0.05. RESULTS: The mineral gain in enamel was not statistically different between nHA and nanosilica infiltrants (P = 0.9950). nHA infiltrated dentin showed significantly more mineral gain (P = 0.0001) than nanosilica infiltrant. The depth of penetration of the nHA in enamel was statistically greater than that of nanosilica, but in dentin, the difference was not significant. CONCLUSION: nHA infiltrant performed better in mineral gain, and penetrated deeper into the demineralized erosive lesions, compared to nanosilica infiltrant in both enamel and dentin. The highest mineral precipitation and deeper penetration into both demineralized enamel and dentin was observed with nHA infiltrant compared to (as against) nanosilica infiltrant.
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spelling pubmed-78610692021-02-05 Efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization Karumuri, Srujana Mandava, Jyothi Pamidimukkala, Sahithi Uppalapati, Lakshman Varma Konagala, Ravi Kumar Dasari, Lohita J Conserv Dent Original Article AIM: The aim is to assess and compare the mineral gain and penetration depth of hydroxyapatite and silica nanoparticle infiltrates into artificially created erosive lesions of enamel and dentin. MATERIALS AND METHODS: Sixty extracted human molars were sectioned to obtain enamel and dentin samples (n = 60 each). They were demineralized using citric and formic acid, respectively, to create erosive lesions on enamel and dentin surfaces. Samples were assigned into nanohydroxyapatite (nHA) or nanosilica groups (n = 30 each) according to the infiltrant used. Half of the enamel and dentin samples in each group (n = 15) were analyzed after erosive attack for mineral loss, after infiltrant application for mineral gain, using energy-dispersive X-ray spectroscopy. In another half of the enamel and dentin samples (n = 15), the penetration depth of the nanoinfiltrants was analyzed using confocal microscopy. STATISTICAL ANALYSIS: To compare the overall mineral gain between groups, a dependent t-test was applied. The intergroup comparisons were made using one-way ANOVA followed by Tukey post hoc test for pairwise comparisons for both penetration depth and mineral gain. The significance level was set to P ≤ 0.05. RESULTS: The mineral gain in enamel was not statistically different between nHA and nanosilica infiltrants (P = 0.9950). nHA infiltrated dentin showed significantly more mineral gain (P = 0.0001) than nanosilica infiltrant. The depth of penetration of the nHA in enamel was statistically greater than that of nanosilica, but in dentin, the difference was not significant. CONCLUSION: nHA infiltrant performed better in mineral gain, and penetrated deeper into the demineralized erosive lesions, compared to nanosilica infiltrant in both enamel and dentin. The highest mineral precipitation and deeper penetration into both demineralized enamel and dentin was observed with nHA infiltrant compared to (as against) nanosilica infiltrant. Wolters Kluwer - Medknow 2020 2020-12-04 /pmc/articles/PMC7861069/ /pubmed/33551597 http://dx.doi.org/10.4103/JCD.JCD_182_20 Text en Copyright: © 2020 Journal of Conservative Dentistry http://creativecommons.org/licenses/by-nc-sa/4.0 This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Original Article
Karumuri, Srujana
Mandava, Jyothi
Pamidimukkala, Sahithi
Uppalapati, Lakshman Varma
Konagala, Ravi Kumar
Dasari, Lohita
Efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization
title Efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization
title_full Efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization
title_fullStr Efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization
title_full_unstemmed Efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization
title_short Efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization
title_sort efficacy of hydroxyapatite and silica nanoparticles on erosive lesions remineralization
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7861069/
https://www.ncbi.nlm.nih.gov/pubmed/33551597
http://dx.doi.org/10.4103/JCD.JCD_182_20
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